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A Novel Compact Dual Notch with High-Gain Multi-Layer Dielectric Resonator Antenna for Ultrawide-Band Applications
Faculty
Engineering
Year:
2022
Type of Publication:
ZU Hosted
Pages:
Authors:
Mai Fouad Ahmed Fouad
Staff Zu Site
Abstract In Staff Site
Journal:
Progress In Electromagnetics Research M, pier
Volume:
Keywords :
, Novel Compact Dual Notch with High-Gain
Abstract:
Abstract|In this paper, a novel compact high-gain multi-layer dielectric resonator antenna for ultra- wideband applications is designed and fabricated. The proposed antenna employs a new technique to make a notch-band for the frequencies within UWB. This technique helps avoid any interference for bands like WLAN and X-band for satellite applications. In this design, several notch bands can get at different frequencies by changing the length of slots. The operating bandwidth of this antenna is between 4.8 GHz and 11.31 GHz with 10 dB return loss and maximum gain of 6 dBi. Finally, the proposed antenna is fabricated and measured to validate the simulation results. The simulation results are obtained by two different simulators; CST Studio suiteTM 2020 and HFSS 15 to ensure the validity of the design results before fabrication. The fabricated antenna is measured using Agilent R&S Z67 VNA. There is a good agreement between the simulation and experimental results.
Author Related Publications
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Mai Fouad Ahmed Fouad, "A Novel Wearable Metamaterial Fractal Antenna for Wireless Applications", MECAP2016, 2016
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Mai Fouad Ahmed Fouad, "A Compact 28/38 GHz MIMO Circularly Polarized Antenna for 5 G Applications", Springer, 2021
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Mai Fouad Ahmed Fouad, "A systematic investigation of four ports MIMO antenna depending on flexible material for UWB networks", nature, 2022
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Mai Fouad Ahmed Fouad, "Analysis and Design of 79 GHz Patch Antenna Array for Radar Applications", EKB, 2023
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Department Related Publications
Walid Saber Abdelaleem Ibrahiem Eldeeb, "Analysis of the Nonlinear Impairments on the DWDM Optical Communication Systems", The Egyptian International Journal of Engineering Sciences and Technology, 2016
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Rania Ahmed Elsayed Ahmed Mansour Khalifa, "Performance Enhancement of Indoor Cellular Visible Light Communication through Cell Size and Wavelength Reuse Pattern", Springer Nature, 2023
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Rania Ahmed Elsayed Ahmed Mansour Khalifa, "Dual-Band Millimeter-Wave Circularly Polarized Antenna for Mobile Communications", IEEE, 2022
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Walid Saber Abdelaleem Ibrahiem Eldeeb, "5G MIMO Antenna System Based on Patched Folded Antenna with EBG Substrate", Electromagnetics Academy, 2022
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